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Machine compliance in compression tests

机译:压缩测试的机器符合性

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The compression behavior of a material cannot be accurately determined if the machine compliance is not accounted prior to the measurements. This work discusses the machine compliance during a compressibility test with fiberglass fabrics. The thickness variation was measured during loading and unloading cycles with a relaxation stage of 30 minutes between them. The measurements were performed using an indirect technique based on the comparison between the displacement at a free compression cycle and the displacement with a sample. Relating to the free test, it has been noticed the nonexistence of machine relaxation during relaxation stage. Considering relaxation or not, the characteristic curves for a free compression cycle can be overlapped precisely in the majority of the points. For the compression test with sample, it was noticed a non-physical decrease of about 30 μm during the relaxation stage, what can be explained by the greater fabric relaxation in relation to the machine relaxation. Beyond the technique normally used, another technique was used which allows a constant thickness during relaxation. Within this second method, machine displacement with sample is simply subtracted to the machine displacement without sample being imposed as constant. If imposed as a constant it will remain constant during relaxation stage and it will suddenly decrease after relaxation. If constantly calculated it will decrease gradually during relaxation stage. Independently of the technique used the final result will remain unchanged. The uncertainty introduced by this imprecision is about ±15 μm.
机译:如果在测量之前未计算机器合规性,则不能精确地确定材料的压缩行为。这项工作讨论了玻璃纤维织物的可压缩性测试期间的机器符合性。在装载和卸载循环期间测量厚度变化,在它们之间弛豫阶段为30分钟。使用基于自由压缩周期的位移与样品的位移之间的比较来执行测量。与免费测试有关,它已经注意到放松阶段期间机器放松的不存在。考虑到弛豫与否,可以在大多数点中精确地重叠的自由压缩循环的特征曲线。对于具有样品的压缩试验,在松弛阶段期间被注意到约为30μm的非物理降低,可以通过与机器松弛相关的更大的织物松弛来解释什么。除了正常使用的技术之外,使用另一种技术,其在松弛期间允许恒定的厚度。在该第二方法中,用样品的机器位移简单地减去到机器位移,而没有样品被施加为常数。如果施加为恒定,在放松阶段将保持恒定,放松后会突然下降。如果不断计算它会在放松阶段逐渐降低。独立于使用最终结果的技术将保持不变。这种不精确引入的不确定性约为±15μm。

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